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Modelling hydrodynamics and water quality in the separation waterway of the Yulin offshore industrial park, Taiwan

机译:台湾榆林海上工业园区分离水道的水动力和水质模拟

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Numerical models are often used to evaluate the potential impact of human alternation of natural water bodies and to help the design of the alternation to mitigate its impacts. This paper describes a case study in which an estuarine hydrodynamic and water quality model was used to help the design of the artificial waterway for an offshore industrial park. Yulin offshore industrial park is located at the central western coast of Taiwan. To mitigate its impacts on the nearby coastal area, the industrial park is buffered by a waterway separating it from the main island. The original design of the separation waterway has a width of 500 m. However, this width has been a controversial issue for the past 10 years. Since the separation waterway receives discharges from two streams in the main island, the Shu-Chu-Liao Stream and Hsin-Hu-Wei Stream, the potential inundation during flood events and water quality conditions during low flow periods are two of the major considerations for the width of the waterway. A vertical two-dimensional, real-time model of estuarine hydrodynamics and water quality was modified and used to determine the rational width of the separation waterway. The model modification is necessary to account for the multiple outlets into the sea when the whole system of the separation waterways is completed. Model calibration and verification were conducted with current, residual velocity, salinity, and water quality variables measured in the completed portion of the waterway. The overall performance of the model was in qualitative agreement with the available field data. The model was then used to evaluate several scenarios of different widths for the yet-to-be completed system of separation waterways. Based on the model simulation results, a 200 m wide waterway, bordered by 300 m wide flood plain, is recommended for adoption. The model simulation indicated that coastal water quality standard may be attained and inundation by the 50-year flood may be avoided by such a separation waterway.
机译:数值模型通常用于评估人类自然水体变更的潜在影响,并帮助设计变更以减轻其影响。本文描述了一个案例研究,其中使用河口水动力和水质模型来帮助设计离岸工业园区的人工水道。榆林海上工业园区位于台湾中西部海岸。为了减轻其对附近沿海地区的影响,该工业园区由一条将其与主要岛屿隔开的水道加以缓冲。分离水道的原始设计宽度为500 m。但是,在过去的10年中,这种宽度一直是一个有争议的问题。由于分隔水道从主岛上的蜀楚辽河溪流和新胡韦溪流接收两条河流的排放物,因此在洪水事件中的潜在淹没和低流量时期的水质状况是以下两个主要考虑因素水道的宽度。修改了垂直二维河口水动力和水质实时模型,并用于确定分离水道的合理宽度。当分离水道的整个系统完成时,必须对模型进行修改以考虑到多个出海口。进行模型校准和验证时,需在水道完工部分中测量水流,剩余速度,盐度和水质变量。该模型的整体性能与可用的现场数据在质量上一致。然后,该模型用于评估尚未完成的分离水道系统的几种不同宽度的方案。根据模型模拟结果,建议采用200 m宽的水路,以300 m宽的洪泛区为边界。模型模拟表明,通过这种分隔水道,可以达到沿海水质标准,并可以避免50年洪水泛滥。

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